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首页> 外文期刊>Journal of Sensors >Shrinkage Effects of the Conduction Zone in the Electrical Properties of Metal Oxide Nanocrystals: The Basis for Room Temperature Conductometric Gas Sensor
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Shrinkage Effects of the Conduction Zone in the Electrical Properties of Metal Oxide Nanocrystals: The Basis for Room Temperature Conductometric Gas Sensor

机译:导通区的收缩效应在金属氧化物纳米晶体电性能下的影响:室温传导气体传感器的基础

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摘要

The influence of charge localized at the surface of minute metal oxide nanocrystals was studied in WO_3 and In_2O_3 nanostructures, which were obtained replicating mesoporous silica templates. Here, it is shown that the very high resistive states observed at room temperature and dark conditions were originated by the total shrinkage of the conductive zone in the inner part of these nanocrystals. On the contrary, at room temperature and under UV illumination, both photogenerated electron-hole pairs and empty surface states generated by photons diminished the negative charge accumulated at the surface, enlarging the conductive zone and, as a consequence, leading to a reduction of the electrical resistance. Under these conditions, empty surface states produced by UV light reacted with oxidizing gaseous molecules. The charge exchange associated to these reactions also affected the size of the inner conductive zone, and leaded to a new steady-state resistance. These chemical, physical and geometrical effects can be used for gas detection, and constitutes the basis for developing novel room temperature conductometric gas sensors responsive to oxidizing species.
机译:在WO_3和IN_2O_3纳米结构中研究了在微小金属氧化物纳米晶体表面的电荷的影响,从而获得复制中孔二氧化硅模板。这里,显示在室温和暗条件下观察到的非常高的电阻状态源自这些纳米晶体内部的导电区的总收缩。相反,在室温和UV照明下,光子化的电子 - 空穴对和由光子产生的空表面状态减小了在表面上积聚的负电荷,扩大导电区,并因此导致减少电阻。在这些条件下,通过UV光产生的空表面态与氧化气态分子反应。与这些反应相关的电荷交换也影响了内部导电区的尺寸,并引入了新的稳态电阻。这些化学品,物理和几何效果可用于气体检测,并构成响应于氧化物种的开发新型室温传感器的基础。

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  • 来源
    《Journal of Sensors 》 |2009年第nano期| 共6页
  • 作者单位

    Departament d'Electrdnica Universitat de Barcelona;

    Departament d'Electrdnica Universitat de Barcelona;

    Departament d'Electrdnica Universitat de Barcelona;

    Departament d'Electrdnica Universitat de Barcelona;

    IREC Institut de Recerca en Energia de Catalunya;

    Departament d'Electrdnica Universitat de Barcelona;

    Departament d'Electrdnica Universitat de Barcelona;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TP212;
  • 关键词

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